3D-Printed β-Tricalcium Phosphate Scaffold Combined with a Pulse Electromagnetic Field Promotes the Repair of Skull Defects in Rats.
Haifeng LiangXiao LiuYing PiQiang YuYukun YinXian LiYipei YangJing TianPublished in: ACS biomaterials science & engineering (2019)
Trauma, infection, cancer, and congenital diseases can lead to bone defects. The combination of 3D printing with biomaterials is of great significance in the treatment of bone defects. In addition, pulse electromagnetic fields (PEMFs) can promote bone regeneration. The main purpose of this study was to evaluate the effects of 3D-printed scaffolds using β-tricalcium phosphate (β-TCP) as the raw material combined with a PEMF on the proliferation and differentiation of rat adipose stem cells (rADSCs) and on the repair of critical defects of the rat skull. The Cell Counting Kit-8 assay was performed to assess the proliferation of rADSCs. Alkaline phosphatase (ALP) activity, ALP staining, and the detection of osteogenic-related gene expression were performed to assess the differentiation of rADSCs. Micro-computed tomography and hematoxylin-eosin staining were used to assess the repair of rat skull defects. The results showed that the combination of the scaffold and PEMF could significantly promote the proliferation and differentiation of rADSCs and the repair of a critical defect in the rat skull. Therefore, the combination of β-TCP and PEMF with 3D printing technology can provide better treatment of clinical bone defect patients.
Keyphrases
- bone regeneration
- stem cells
- gene expression
- computed tomography
- oxidative stress
- signaling pathway
- tissue engineering
- bone mineral density
- end stage renal disease
- ejection fraction
- newly diagnosed
- cell therapy
- high frequency
- dna methylation
- adipose tissue
- high throughput
- single cell
- magnetic resonance imaging
- bone marrow
- soft tissue
- patient reported outcomes
- positron emission tomography
- peritoneal dialysis
- postmenopausal women
- papillary thyroid
- young adults
- magnetic resonance
- image quality
- real time pcr
- loop mediated isothermal amplification
- childhood cancer